Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9855020 | Nuclear Physics B | 2005 | 31 Pages |
Abstract
We determine the mass-dependent renormalization as well as improvement coefficients for the heavy-light vector and axial-vector currents consisting of the relativistic heavy and the domain-wall light quarks through the standard matching procedure. The calculation is carried out perturbatively at the one-loop level to remove the systematic error of O(αs(amQ)nap) as well as O(αs(amQ)n) (n⩾0), where p is a typical momentum scale in the heavy-light system. We point out that renormalization and improvement coefficients of the heavy-light vector current agree with those of the axial-vector current, thanks to the exact chiral symmetry for the light quark. The results obtained with three different gauge actions, plaquette, Iwasaki and DBW2, are presented as a function of heavy quark mass and domain-wall height.
Related Topics
Physical Sciences and Engineering
Mathematics
Mathematical Physics
Authors
Norikazu Yamada, Sinya Aoki, Yoshinobu Kuramashi,